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1.
On Hexagonal Perovskites with Cationic Vacancies. X. Compounds of Type Ba4BIII(ReW□O12) – New Rhombohedral 12 L-Stacking Polytypes Compounds of type Ba4BIII(ReW□O12) are described for BIII = Sc, In, Lu, Yb. They crystallize in the rhombohedral 12 L-stacking poly/type (space group R3 m, sequence (3)(1) ? hhcc).  相似文献   

2.
On Hexagonal Perovskites with Cationic Vacancies. III. Structure Determination on Compounds of Type Ba2B □2/3 ReVIIO6 Compounds of Type Ba2B □2/3 ReVIIO6 with BIII = rare earth, Y. Sc, In belong to the group of hexagonal perovskite stacking polytypes. For BIII = Gd, Y structure determinations with powder data have been performed. The refined R′ factors are 9.11% for Ba2Gd1/3□2/3ReO6 and 12.07% for Ba2Y1/3□2/3ReO6. The structure represents a rhombohedral 12 L type (space group R3 m) with the sequence hhcchhcchhcc. The lattice contains groups of three octahedra connected by common faces which are linked together by a single octahedron via common vertices. In the block of three face-sharing octahedra the central octahedral lattice site is vacant and the two outer positions are occupied by the rhenium atoms. According to this distribution direct contact of occupied face-sharing octahedra is absent.  相似文献   

3.
On Hexagonal Perovskites with Cationic Vacancies. XVII. Structure Determination on Ba9Nb6W□2O27 – the First Stacking Polytype of a Rhombohedral 27 L-Type The hexagonal stacking polytype of rhombohedral 27 L -type, Ba9Nb6W□2O27, crystallizes in the space group R3 m with the sequence (4)1(3)1 ? (hhccchhcc)3 and three formula units for the trigonal setting. The refined, intensity related, R'-value is 9.7percnt;. The octahedral net consists of blocks of three face connected octahedra which are linked to each other alternately through one or two octahedra connected exclusively by common vertices. The cationic vacancies are located in the centers of the groups of three octahedra. With this distribution direct contact between occupied face-sharing octahedra is avoided. The niobium and tungsten atoms are distributed statistically between the remaining octahedral holes. In the blocks of three octahedra they are displaced by ≈ 0.29 Å from their ideal positions in the direction of the central void. The Ba atoms neighbouring a vacancy (all in hexagonal packed BaO3 sheets) are dislocated in the direction of the void, while the cubic packed BaO3 sheets maintain nearly regular form.  相似文献   

4.
On Hexagonal Perovskites with Cationic Vacancies. XX. Ba6Nb4Zr□o18 - a New Stacking Polytype with a Rhombohedra1 18 L Structure The white Ba6Nb4Zr□O18 crystallizes in a rhombohedral 18 L structure (a = 5.821 Å; c = 42.63 Å; space group R3 m) with three formula units for the trigonal setting (?exp = 6.05 g/cm3; ?calc = 6.271 g/cm3). The corresponding TiIV and HfIV compounds, Ba6Nb4Zr□O18 and Ba6Nb4Hf□O18, are isotypic.  相似文献   

5.
On Hexagonal Perovskites with Cationic Vacancies. VII. Vibrational Spectroscopie investigations on the Rhombohedral 12 L-Stacking Polytypes Ba4BII(Re2□O12) and Ba4B □1/3 (Re2 □ O12) For the rhombohedral 12 L stacking polytypes Ba4BII(Re2□O12) and Ba4B□1/3(Re2□O 12), space group R3 m, sequence (3)(1), the lattice consists of groups of three face sharing octahedra with the composition Re2□O12. They are isolated from each other by the Ba and B ions.The vibrational spectra are interpreted according to the factor group analysis. For the Re2□O12 unit (symmetry D3d) the results of a complete vibrational analysis and the calculation of the force constants are reported.  相似文献   

6.
On Hexagonal Perovskites with Cationic Vacancies. XII. Structure Determination on Ba6W42O18 The stacking polytype Ba6W42O18 is the first oxidic variant of the Cs3Tl2Cl9-type. The structure determination gave for the space group R3 c with the sequence (h)6, Z = 3, the refined, intensity related R′ value of 6.8%. The octahedral net consists of groups of two face sharing WO6 octahedra (W2O6/2;O6), which are in the (110) plane displaced against each other. In the doublé octahedra the tungsten atoms are shifted away from their ideal central position (W–W: 2.327 Å) with the result, that the W–W distance has increased to 2.905 Å.  相似文献   

7.
On Hexagonal Perovskites with Cationic Vacancies. XIV. The Rhombohedral 12 L-Stacking Polytypes Ba2La2BII(W □O12) Rhombohedral 12 L-stacking polytypes with cationic vacancies of type Ba2La2BII-(W□O12) are reported for BII = Mg, Zn (white), Ni(light brown) and Co(brown). They crystallize in the space group R3 m, sequences (3 )(1) ? (hhcc)3. For BII = Cu, as a consequence of the Jahn Teller effect, a triclinic distorted lattice is observed.  相似文献   

8.
On Hexagonal Perovskites with Cationic Vacancies. I. Compounds of the Type Ba2B □2/3ReVIIO6 Compounds of Type Ba2B□2/3ReVIIO6 are formed with BIII = Sm? Gd Ho? Lu, Y, Sc, In (yellow); Tb (black-brown); Dy (yellow-orange). They crystallize with BIII = Sm? Lu, Y and Sc in a rhombohedral layer structure of 12 L-type (space group R3 m; sequence: cchhcchhcchh) with 6 formula units in the unit cell.  相似文献   

9.
On Hexagonal Perovskites with Cationic Vacancies. VI. Structure Determination on Ba8Re2W33O24 – the First Hexagonal Stacking Polytype with 24 Layers For the hexagonal stacking polytype of rhomboedral 24 L type, Ba8Re2W33O24, eight sequences are possible: (6)(2); (4)1(2)1; (5)1(1)1; (5)(3); (3)11(1)11; (1)21(1)12 (all space group R3m) and 4211; 3221 (all space group R3m). By vibrational spectroscopic investigations the sequences (6)(2); (5)(3) and 4211 could be eliminated. By means of intensity calculations the sequence (1)21(1)12 or chhhhchh respectively can be selected out of the remaining five. The structure contains groups of three and five face-connected octahedra which are linked with another by common corners. In the ideal structure, vacant lattice sites are found in the centres of the second and fourth octahedra of the block of five face-sharing octahedra and in the central octahedron of the block of three face-sharing octahedra. The remaining positions are occupied by the Re and W atoms. According to this distribution an direct contact of occupied face-sharing octahedra is absent. In the real structure, lattice defects are introduced by partial redistribution of atoms between occupied and vacant lattice positions in the blocks of three and five face-sharing octahedra. The occupation factor of one vacancy is about 8%. The refined, intensity related R′ value is 15.2%.  相似文献   

10.
On Hexagonal Perovskites with Cationic Vacancies. XVI. Rhombohedral 12 L-Stacking Polytypes Ba3AIIIM □O12 with MV = Nb, Ta The white quaternary oxides Ba3LaM□O12 with MV = Nb, Ta belong to the group of hexagonal perovskites with cationic vacancies. They crystallize in a rhombohedral 12 L-structure (sequence (hhcc)3; space group R3 m) with a = 5.751 Å; c = 28.11 Å (MV = Nb); a = 5.746 Å; c = 28.20 Å (Ta) and Z = 3. Signs for the formation of isotypic compounds with AIII = Pr, Nd could be obtained as well.  相似文献   

11.
On Hexagonal Perovskites with Cationic Vacancies. XXVIII. Structure of Rhombohedral 9 L Stacking Polytypes Ba3W Nb □O9?x/2x/2 According to the intensity calculations for Ba3W4/3Nb2/3□O26/31/3 and Ba3Nb2□O8□(II) these rhombohedral 9 L compounds crystallize in the space group R3m, sequence (hhc)3. The refined, intensity related R′ values are 6.9% (Ba3W4/3Nb2/3□O26/31/3) and 7.2% (Ba3Nb2□O8□(II)). The relations between the rhombohedral 9 L structure (A3M2□O9) and the palmierite type (A3M2□O8□) are discussed.  相似文献   

12.
On Hexagonal Perovskites with Cationic Vacancies. XXVII. Systems Ba4?xSrxBIIRe2□O12, Ba4B CaxRe2□O12, and Ba4?xLaxBIIRe2?xWx□O12 with BII = Co, Ni In the systems Ba4?xSrxBIIRe2□O12, Ba4BCaxRe2□O12 and Ba4?xLaxBIIRe2?xWx□O12 (BII = Co, Ni) hexagonal perovskites with a rhombohedral 12 L structure (general composition A4BM2□O12; sequence (hhcc)3; space group R&3macr;m) are observed. With the exception of Ba4NiRe2□O12 the octahedral net consists of BO6 single octahedra and M2□O12 face connected blocks (type 1). In type 2 (Ba4NiRe2□O12) the M ions are located in the single octahedra and in the center of the groups of three face connected octahedra. The two outer positions of the latter are occupied by B ions and vacancies in the ratio 1:1. The difference between type 1 and 2 are discussed by means of the vibrational and diffuse reflectance spectra.  相似文献   

13.
On Hexagonal Perovskites with Cationic Vacancies. XXXII. Photoluminescence of Trivalent Rare Earth in the Systems Ba2?ySryLa2?xRExMgW2□O12 In the series Ba2?ySryLa2?xRExMgW2□O12 the Ba2+ can be completely substituted by Sr2+. All compounds crystallize in the rhombohedral 12 L-type (space group R3 m; sequence (hhcc)3). By doping the stacking polytypes with some of the trivalent rare earths efficient visible photoluminescence is obtained. The simultaneous incorporation of two different rare earth ions leads to two-color-phosphors, which, according to the excitation energy used, emit either mainly the typical spectrum from one or the other activator; the corresponding luminescence mechanism are discussed.  相似文献   

14.
On Ordered Perovskites with Cationic Vacancies III. Ba2CeSb4/51/5O6, the First Representant of a New Perovskite Variant The lemon coloured Ba2CeSb4/51/5O6 is polymorphic. The HT modification has a cubic face centered (a = 8.539 Å) and the TT form a cubic primitive lattice (a = 8.531 Å). According to the density measurement there are 4 formula units of Ba2CeSb4/51/5O6 in the unit cell.  相似文献   

15.
On Hexagonal Perovskites with Cationic Vacancies. XV. Ba9Nb6W□2O27 – the First Perovskite Stacking Polytype of Rhombohedral 27 L-Type The perovskite stacking polytype Ba9NbWVI2O27(white) is the first representative of a rhombohedral 27 L-type. The lattice parameters (trigonal setting) are: a = 5.793 Å; c = 63.41 Å; Z = 3 (?exp = 6.46 g/cm3; ?calc = 6.512 g/cm3). The corresponding TaV -compound is isotypic; it tends to develop stacking faults.  相似文献   

16.
On Hexagonal Perovskites with Cationic Vacancies. V. Structure Determination on H? Ba2Lu2/31/3WO6 — a Novel Rhombohedral Stacking Polytype with 18 Layers Compounds of type Ba2B□1/3WVIO6 with BIII ? Gd—Lu, Y are polymorphic They crystallize in a cubic 1:1 ordered perovskite structure and in a new rhombohedral perovskite stacking polytype of 18 L respectively. By intensity calculations out of the three possible stacking sequences (4)(2), (5)(1) and (3)1(1)1 (all space group R3 m) the sequence (5)(1) can be selected. For H? Ba2Lu2/31/3WO6 the refined R′ factor is 14.1%. The structure contains groups of three octahedra connected with another by common faces which are linked with each other by three corner sharing octahedra. In the block of three face sharing octahedra the central octahedral lattice site is vacant, the two outer positions are occupied by tungsten atoms. According to this distribution a direct contact of occupied face sharing octahedra is absent.  相似文献   

17.
On Hexagonal Perovskites with Cationic Vacancies. XXXI. Systems BaO? Re2O7? M O5 with MV = Nb, Ta In the systems BaO? Re2O7? MO5 three quaternary oxides are formed, which belong to the perovskite stacking polytypes with cationic vacancies: Ba8Re7/2M□3O24 (MV = Nb, Ta; rhombohedral 24 L type; sequence (hhhhchhc)3; space group R3 m), Ba4Re9/8Ta13/85/4O12 (rhombohedral 12 L type; sequence (hhcc)3; space group R3 m) and the phases Ba5BaRe3/2?xM □O15?xx (MV = Nb, Ta; variants of a hexagonal 5 L type).  相似文献   

18.
On Hexagonal Perovskites with Cationic Vacancies. XI. Stacking Polytype Ba6W42O18 The white Ba6W42O18, with a cation/vacancy ratio of 2:1 for the octahedral holes, is the first representative of a new stacking polytype for this formula type. It crystallizes in a rhombohedral six layer-structure with ahex = 10.130 Å chex = 13.960 Å Z = 3 (ρexp = 7.38 g/cm3; ρcalc = 7.418 g/cm3).  相似文献   

19.
On Ordered Perovskites with Cationic Vacancies. II. The Incorporation of NbV in Ba2Gd0,670,33UO6 In Ba2Gd0.670.33UO6 a complete substitution of UVI by NbV is possible by filling the cationic vacancies (x-phase: Ba2Gd0.67+0.33xU1?xNbxO6). For the y-Phase (Ba2Gd0.67U1?yNbyO6?0.5y) solid solutions are formed only for y ? 0.5. The properties of both phases are studied by x-ray and spectroscopic methods. In Ba2GdNbO6 – in contrary to the complete ordered Ba2GdTaO6 – the order of gadolinium and niobium id partial.  相似文献   

20.
On Hexagonal Perovskites with Cationic Vacancies. XXIV. Rhombohedral 9 L Stacking Polytypes in the Systems Ba3W M □O9?x/2x?2 with MV = Nb, Ta In the system Ba3WNb□O9?x/2x/2 stacking polytypes of rhombohedral 9 L type (sequence (hhc)3; space group R3 m) can be prepared with ~1/3 ? × ? 2. For x = 2(Ba3Nb2□O8□) two modifications are formed. In the corresponding Ta system the phase with is reduced to a smaller region with x ? 1/3.  相似文献   

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